点火系统
节气门
汽车工程
汽油直喷
废气再循环
发动机爆震
汽油
自燃温度
核工程
环境科学
化学
热力学
物理
均质压燃
内燃机
工程类
燃烧
燃烧室
有机化学
作者
Hao Meng,Changwei Ji,Jianpu Shen,Jinxin Yang,Xin Gu,Ke Chang,Shuofeng Wang
标识
DOI:10.1016/j.ijhydene.2022.07.185
摘要
Hydrogen-fuel Wankel rotary engine (HWRE) has higher power density than current marketed gasoline-fueled engines, however, it suffers from the knock. Hence, the purpose of this work is to investigate the impacts of cooled exhaust gas recirculation (EGR) on the knock in a HWRE by analyzing the relationship between some knock-relevant parameters and EGR level, which is conducted at 1500 r/min, wide-open throttle, stoichiometric ratio, and respectively constant ignition timing and CA50. The results show that cooled EGR can be used as an effective means of eliminating the knock in HWRE. As the EGR level is increased, the size and distribution of knock-relevant parameters, such as knock intensity, knock duration, crank angle of peak knock pressure and so on, show their own change characteristics. Besides, the role of the EGR level on the knock-relevant parameters is also influenced by the ignition timing and CA50. Overall, cooled EGR has a positive effect on the suppression of knock.
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